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An optimal sensing strategy for recognition and localization of 3D natural quadric objects

机译:用于识别和定位3D自然二次物体的最佳传感策略

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摘要

An optimal sensing strategy for an optical proximity sensor system engaged in the recognition and localization of 3D natural quadric objects is presented. The optimal sensing strategy consists of the selection of an optimal beam orientation and the determination of an optimal probing plane that compose an optimal data collection operation known as an optimal probing. The decision of an optimal probing is based on the measure of discrimination power of a cluster of surfaces on a multiple interpretation image, where the measure of discrimination power is defined in terms of a utility function computing the expected number of interpretations that can be pruned out by a probing. An object representation suitable for active sensing based on a surface description vector distribution graph and hierarchical tables is presented. Experimental results are shown.
机译:提出了一种用于3D自然二次物体识别和定位的光学接近传感器系统的最佳传感策略。最佳传感策略包括选择最佳光束方向和确定构成最佳数据收集操作(称为最佳探测)的最佳探测平面。最佳探测的决定基于多重解释图像上一簇表面的辨别力的度量,其中辨别力的度量是根据效用函数定义的,该效用函数计算了可以删除的期望解释数通过探测。提出了一种基于表面描述矢量分布图和层次表的适于主动感应的对象表示。显示了实验结果。

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